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Molecular modeling of the GABAC receptor ligand-binding domain

机译:GABAC 受体配体结合域的分子模拟

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We have constructed a molecular model of the ligand-binding domain of the GABAC receptor, which is a member of the Cys-loop ligand-gated ion channel family. The extracellular domains of these receptors share similar sequence homology (20%) with Limnaea acetylcholine-binding protein for which an X-ray crystal structure is available. We used this structure as a template for homology modeling of the GABAC receptor extracellular domain using FUGUE and MODELLER software. FlexX was then used to dock GABA into the receptor ligand-binding site, resulting in three alternative energetically favorable orientations. Residues located no more than 5 Å from the docked GABA were identified for each model; of these, three were found to be common to all models with 14 others present only in certain models. Using data from experimental studies, we propose that the most likely orientation of GABA is with its amine close to Y198, and its carboxylate close to R104. These studies have therefore provided a model of the ligand-binding domain, which will be useful for both GABAC and GABAA receptor studies, and have also yielded an experimentally testable hypothesis of the location of GABA in the binding pocket.
机译:我们构建了GABAC受体配体结合域的分子模型,该分子是Cys环配体门控离子通道家族的成员。这些受体的胞外域与林木乙酰胆碱结合蛋白具有相似的序列同源性(20%),该蛋白具有X射线晶体结构。我们使用这种结构作为模板,使用FUGUE和MODELLER软件对GABAC 受体胞外域进行同源建模。然后使用FlexX将GABA停靠在受体配体结合位点,从而产生三个能量上有利的替代方向。对于每种模型,鉴定出距停靠的GABA不超过5Å的残基;在这些模型中,有3个是所有模型共有的,另外14个仅在某些模型中存在。使用来自实验研究的数据,我们提出GABA最可能的取向是其胺接近Y198,羧酸盐接近R104。因此,这些研究提供了配体结合结构域的模型,该模型对于GABAC 和GABAA 受体研究都将是有用的,并且还产生了GABA在结合中的位置的实验可检验的假设。口袋。

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